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Research on the Relationship between Density of States and Conducting Properties of Single-walled Carbon Nanotubes
作者姓名:ZhenhuaZHANG  JingcuiPENG  XiaohuaCHEN  JianxiongWANG
作者单位:[1]DepartmentofInformationandCalculatingScience,ChangshaCommunicationsUniversity,Changsha410076,China [2]DepartmentofAppliedPhysics,HunanUniversity,Changsha410082,China
摘    要:The analytical expression of the electronic density of states (DOS) for single-walled carbon nanotubes (SWNTs) has been derived on the basis of graphene approximation of the energy E(k) near the Fermi level EF. The distinctive properties of the DOS, the normalized differential conductivity and the current vs bias for SWNTs are deduced and analyzed theoretically. The singularities in the DOS (or in the normalized differential conductivity) predict that the jump structure of current (or conductance)--bias of SWNTs exists. All conclusions from the theoretical analysis are in well agreement with the experimental results of SWNT‘s electronic structure and electronic transport. In other words, the simple theoretical model in this paper can be applied to understand a range of spectroscopic and other measurement data related to the DOS of SWNTs.

关 键 词:纳米电子技术  碳纳米管材料  半导体材料  CNTs

Research on the Relationship between Density of States and Conducting Properties of Single-walled Carbon Nanotubes
ZhenhuaZHANG JingcuiPENG XiaohuaCHEN JianxiongWANG.Research on the Relationship between Density of States and Conducting Properties of Single-walled Carbon Nanotubes[J].Journal of Materials Science & Technology,2003,19(2):110-112.
Authors:Zhenhua ZHANG  Jingcui PENG  Xiaohua CHEN  Jianxiong WANG
Affiliation:Department of Information and Calculating Science, Changsha Communications University, Changsha 410076, China...
Abstract:The analytical expression of the electronic density of states (DOS) for single-walled carbon nanotubes (SWNTs) has been derived on the basis of graphene approximation of the energy E(k) near the Fermi level EF. The distinctive properties of the DOS, the normalized differential conductivity and the current us bias for SWNTs are deduced and analyzed theoretically. The singularities in the DOS (or in the normalized differential conductivity) predict that the jump structure of current (or conductance)-bias of SWNTs exists. All conclusions from the theoretical analysis are in well agreement with the experimental results of SWNT's electronic structure and electronic transport. In other words, the simple theoretical model in this paper can be applied to understand a range of spectroscopic and other measurement data related to the DOS of SWNTs.
Keywords:Single-walled carbon nanotubes  Graphene approximation of energy  Electronic density of states  Normalized differential conductivity
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